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Laser-induced damage of fused silica on high power laser: beam intensity modulation, optics defect, contamination

机译:高功率激光激光诱导的熔融二氧化硅损伤:光束强度调制,光学缺陷,污染

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The wedged focus lens of fused silica, one of the final optics assembly's optics, focuses the 351 nm beam onto target and separates the residual 1053 and 527 nm light with 351 nm light. After the experiment with beam energies at 3ω range from 3 to 5KJ, and pulse shapes about 3ns, the wedged focus lens has laser-induced damage at particular area. Analysis the damage result, there are three reasons to induce these damages. These reasons are beam intensity modulation, optics defect and contamination that cause different damage morphologies. The 3ω beam intensity modulation, one of three factors, is the mostly import factor to induce damage. Here, the n_2 nonlinear coefficient of fused silica material can lead to small-scale self-focusing filament because of optics thickness and beam intensity. And some damage-filaments' tails are bulk damage spots because there are subsurface scratches or metal contaminations.
机译:熔融二氧化硅的楔形聚焦透镜是最终光学组件的光学器件之一,将351nm光束聚焦到目标上,并将残留的1053和527nm光与351nm光分开。在3Ω/ 5kj的3Ω的光束能量的实验之后,并且脉冲形状约为3ns,楔形焦透镜在特定区域具有激光造成的损坏。分析伤害结果,有三个原因诱导这些损害赔偿。这些原因是光束强度调制,光学缺陷和污染,导致不同的损伤形态。 3Ω光束强度调制,三种因素中的一个,是诱导损坏的主要进口因素。这里,由于光学厚度和光束强度,N_2熔融石英材料的N_2非线性系数可以导致小规模的自聚焦长丝。有些损坏的蝴蝶尾巴是散装损伤点,因为存在地下划痕或金属污染。

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